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Czochralski growth, also called the Czochralski method or technique, is a method for growing high-quality single crystals of various materials
Czochralski growth, also called the Czochralski method or technique, is a method for growing high-quality single crystals of various materials. It finds wide application in the semiconductor industry, but can also be used to create crystals of metals, gemstones and more.
The process starts with melting the desired material’s crystal in a quartz crucible. A small seed crystal, with the desired crystallographic orientation, is then dipped into the molten material. By slowly pulling the seed upwards while simultaneously rotating it, a thin layer of liquid is created around the seed. The entire process, called crystal growth, typically occurs in an inert atmosphere to prevent contamination.
Through careful control of the temperature, pulling speed and rotation rate, a large, high-quality single crystal can be grown from the seed. This crystal will inherit the same crystallographic structure as the seed crystal.
Czochralski growth, also known as crystal pulling, works by utilising the concept of heterogeneous nucleation to initiate the solidification of a molten material onto a seed crystal, ultimately resulting in the formation of a larger, high-quality single crystal. The following is a brief breakdown of the process:
Czochralski growth is the preferred method for manufacturing semiconductors due to several key factors that contribute to the creation of high-quality single crystals:
While Czocharlski Growth is a well-understood and widely-used process, it still has its benefits and drawbacks worth considering. While the context of its usage for manufacturing semiconductors has been mentioned above, it also presents some challenges:
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